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Two-dimensional quadratic Weyl points, nodal loops, and spin-orbit Dirac points in PtS, PtSe, and PtTe monolayers.
Li, Jin-Yang; Kang, Xin-Yue; Zhang, Ying; Li, Si; Yao, Yugui.
Affiliation
  • Li JY; School of Physics, Northwest University, Xi'an 710127, China. sili@nwu.edu.cn.
  • Kang XY; Shaanxi Key Laboratory for Theoretical Physics Frontiers, Xi'an 710127, China.
  • Zhang Y; School of Physics, Northwest University, Xi'an 710127, China. sili@nwu.edu.cn.
  • Li S; Shaanxi Key Laboratory for Theoretical Physics Frontiers, Xi'an 710127, China.
  • Yao Y; Department of Physics, Beijing Normal University, Beijing 100875, China.
Phys Chem Chem Phys ; 26(5): 4159-4165, 2024 Jan 31.
Article in En | MEDLINE | ID: mdl-38230417
ABSTRACT
Topological quasiparticles have garnered significant research attention in condensed matter physics. However, they are exceedingly rare in two-dimensional systems, particularly those hosting unconventional topological quasiparticles. In this work, employing first-principles calculations and symmetry analysis, we demonstrate that PtS, PtSe, and PtTe monolayers serve as high-quality two-dimensional topological semimetal materials. These materials exhibit multiple types of topological quasiparticles around the Fermi level in the absence of spin-orbit coupling, such as conventional linear Weyl points and unconventional quadratic Weyl points in the PtS monolayer, as well as nodal loops in PtSe and PtTe monolayers. When spin-orbit coupling (SOC) is introduced, a tiny gap opens, transforming the systems into quantum spin hall insulators. Simultaneously, three spin-orbit Dirac points, robust against SOC, appear at the X, Y, and M points. We illustrate the symmetry protection, low-energy effective model, and edge states of these topological states. Our work provides an excellent material platform for studying novel two-dimensional topological quasiparticles and topological insulators.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Phys Chem Chem Phys Journal subject: BIOFISICA / QUIMICA Year: 2024 Type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Phys Chem Chem Phys Journal subject: BIOFISICA / QUIMICA Year: 2024 Type: Article Affiliation country: China